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Expression of ribosomal DNA insertions in Drosophila melanogaster.

Approximately half of the ribosomal genes on the X chromosome of Drosophila melanogaster are interrupted by an insertion of type 1. Nuclear RNA from D. melanogaster embryos was transferred to DBM paper and hybridized with cloned type 1 insertion sequences. With a DNA fragment derived specifically from large insertions, transcripts were detected between 5 and 10 kb. These insertion transcripts represent less than one RNA molecule per nucleus, which is more than three orders of magnitude below the concentration of nascent rRNA chains, as determined by kinetics of hybridization. With a DNA fragment derived from the right end of large insertions which is also complementary to short insertions, more discrete RNA bands appeared with sizes between 1 and 8.5 kb, representing altogether about 13 RNA molecules per nucleus. Insertion transcripts large enough to be potential precursors to 28S rRNA represent less than one molecule per nucleus. It was shown by sandwich hybridization that at least some of the insertion transcripts are derived from rDNA. No significant difference was found between insertion transcripts in RNA extracted from ovaries, embryos, larvae, pupae or adult flies. Unless a mechanism other than splicing is involved, ribosomal genes with insertions cannot contribute significantly to the synthesis of 28S rRNA. A cytoplasmic RNA approximately 1 kb long, which is complementary to a short insertion and to ribosomal gene sequences flanking both sides of the insertion, was found. The abundance of this short unspliced RNA is about 50 molecules per embryo cell.

Animals

Systematic mapping of insertion-tolerant regions enables capsid engineering of an infectious RNA phage.

RNA phages are attractive platforms for the design of programmable bioparticles, but their development has been constrained by limited knowledge of genomic sites that can tolerate sequence insertion. Here, we combined MuA transposase-mediated in vitro insertion mutagenesis with our established reverse genetics systems to systematically identify insertion-tolerant regions (ITRs) in the RNA phages MS2 and PP7. Screening of 4,555 MS2 and 2,228 PP7 random insertion clones identified 29 and 26 non-redundant ITRs, respectively. We further analyzed and compared these ITRs in the context of RNA genome organization and virion architecture. Both phages contained ITRs within the maturation protein, whereas only PP7 tolerated insertions within the coat protein (CP). On the basis of structural location and plaque-forming capacity, an ITR situated between Gly74 and Glu75 (GGC^GAG) in the PP7 CP was selected for further study. Infectious phage particles generated from complementary DNA clones retained the 15-bp insertion at both the RNA and protein levels. Engineered PP7 phages carrying an Arg-Gly-Asp motif inserted into the CP at this ITR displayed enhanced in vivo clearance in a Drosophila model, despite having in vitro stability comparable to that of the wild type. These findings provide the first example of CP engineering in an infectious RNA phage and establish a framework for engineering RNA phages for biological and biotechnological applications.IMPORTANCEA major obstacle to developing RNA phages as synthetic biology platforms is the lack of design principles for genomic insertion. Here, we address this limitation by establishing a mutagenesis-and-recovery workflow that systematically identifies insertion-tolerant regions (ITRs) in the RNA phages MS2 and PP7. The resulting maps reveal distinct structural constraints in the two phages and enable rational engineering of a peptide-display site in the PP7 capsid. Using this approach, we generated an engineered infectious phage with a modified capsid, thereby providing the first demonstration of capsid engineering in an infectious RNA phage, to our knowledge. This study lays the groundwork for the rational design of live RNA phage virions as tractable and engineerable scaffolds for future biological and biotechnological applications.

Animals

Prime assembly with linear DNA donors enables large genomic insertions.

Targeted insertion of large DNA fragments has promising applications for genome engineering and gene therapy1,2. Twin prime-editing guide RNAs have enabled relatively large insertions, but the efficiency remains low for insertions greater than 400 base pairs3-6. Here we describe a prime assembly (PA) approach for the insertion of large DNA donor fragments, of which the ends are designed to overlap with the flaps generated by twin prime editing (twinPE). We used PA to insert one or multiple overlapping DNA fragments, with total insertion sizes ranging from 0.1 kb to 11 kb. An inhibitor of non-homologous end joining enhanced both the efficiency and precision of insertions. PA relies on DNA templates that are easily produced, does not require co-delivery of exogenous DNA-dependent DNA polymerases and proceeds in non-cycling cells, suggesting independence from canonical homology-directed repair pathways. Our study demonstrates that PA can initiate Gibson-like assembly in cells to generate gene insertions without double-stranded DNA breaks, recombinases or homology-directed repair.

Animals

Evaluation of trained midwives in a copper-T IUD insertion Program in Isfahan, Iran.

From four centers in Isfahan, data from 252 insertions of the Cu-T-200 made by midwives and 646 insertions of the same device made by doctors are compared. Although the net cumulative one-year continuation rate for women who had a copper-T inserted by a midwife is significantly lower than for women who had a copper-T inserted by a doctor there are no significant differences between the one-year event rates for the two groups of patients. These data suggest that an expanded role for midwives in IUD insertion programs would be an efficient use of health personnel.

Copper

A program of IUD insertions by paraprofessionals and physicians in the Philippines.

A program of IUD insertions by paramedics and physicians was undertaken at the José Fabella Memorial Hospital. Both Lippes C and D were inserted in the postpartum and interval periods. Results show that paramedics can safely and effectively perform IUD insertions, although there are indications of a need to periodically monitor, and perhaps retrain, personnel, be they paramedic or physician, in the techniques of IUD insertion.

Adult

Regional preference of insertion of Tn501 and Tn802 into RP1 and its derivatives.

The sites of insertion of Tn501 into RP1 and into derivatives of this plasmid that either lack the Tn801 (TnA) element or contain it in a different location have been determined. Similarly, the sites of insertion of Tn802 into a derivative of RP1 that lacks the Tn801 element and into recombinants of this plasmid with Tn501 were determined. 'Hot spots' for insertion were observed with both transposons; but it is clear that a particular DNA sequence is not sufficient to define a 'hot spot', since a particular region does contain many insertions when present in one plasmid but does not do so when part of another.

Base Sequence

The occurrence of long transcription units among the X and Y ribosomal genes of Drosophila melanogaster: transcription of insertion sequences.

Most of the ribosomal transcription units (rTUs) in Drosophila melanogaster observed by electron microscopy measure about 8 kb; a length which corresponds to the size of the 38S precursor to ribosomal RNA in D. melanogaster. However, interspersed among these rTUs are transcription units that are much longer (up to 14.6 kb) than the 8 kb expected for rTUs. Some of these larger length estimates can be attributed to stretching but an important fraction is significantly larger and has up to 60 more fibers per gene.--The following evidence suggests that these larger transcription units are ribosomal genes consisting of insertion sequences. The long transcription units are within the sizes expected for rTUs containing insertion sequences as reported by other workers. Their RNP fibers cross-react with antibodies raised against ribosomal proteins in a manner similar to that observed for ribosomal RNP. They are interspersed among rTUs in the X chromosome.--These putative ribosomal genes carrying insertions are present both in the X and, although to a lesser extent, in the Y ribosomal chromatin as is indicated by their existence in nurse cells of both Oregon R females and females of the genotype sc4sc8/sc4sc8/y+ Y. Analysis of the fiber patterns of "long TUs" supports the hypothesis that the insertion region is being transcribed.--"Long TUs" are found in tandem with non-transcribed spacer regions which are heterogeneous in length with a mean of 1.53+/-0.61 micrometers (or 8.5+/-3.4 kb).

Animals

Insertional inactivation of trpC in cloned Bacillus trp segments: evidence for a polar effect on trpF.

Plasmid pUB110 was previously used as a vector to clone fragments of deoxyribonucleic acid that complement the trpC2 mutation in Bacillus subtilis from endonuclease EcoRI digested B. licheniformis, B. pumilus, and B. subtilis cellular deoxyribonucleic acid. Each of several such trp plasmids was subsequently shown to contain a segment of the trp gene cluster on the basis of genetic complementing activity. In the present study, analysis of the Trp enzyme levels in B. subtilis harboring the constructed trp plasmids confirms the genetic constitution of the plasmids. Thus, plasmids that complement mutations in specific trp genes specify the corresponding enzyme activities. The levels of the plasmid-specified Trp enzymes in B. subtilis were generally above the repressed level of the chromosomally specified Trp enzymes and equal to or below the derepressed levels of the chromosomally specified Trp enzymes. Certain cloned trp segments contain a single HindIII-sensitive site. Insertion of HindIII-generated deoxyribonucleic acid fragments into these trp plasmids resulted in inactivation of trpC complementing activity, loss of the trpC-specified enzyme activity, and a 10-fold reduction in the specific activity of the plasmid-specified trpF product. The HindIII insertions had no detectable effect on the level of the trpD product, nor did the insertions detectably alter plasmid-specified complementing activity other than to abolish trpC complementation. Removal of the HindIII insertions was accompanied by recovery of trpC complementing activity and restoration of the trpC-and trpF-determined enzymes to the levels specified by the parent plasmids.

Bacillus

Sites of insertion of TnA and TnM in RP1 and its derivatives.

The sites of insertion of TnM into the plasmid RP1, into derivatives of RP1 lacking TnA, and into derivatives in which the location of TnA within RP1 has been altered, were determined. Similarly, the sites of insertion of TnA into derivatives of RP1 from which TnA had been deleted, both with and without copies of TnM, have been examined. These studies show the presence in the plasmids of 'hot-spots' for TnA and TnM insertion. It is clear from the observations, however, that a particular DNA sequence in the recipient replicon is not sufficient to definite a 'hot-spot' since particular sequences sometimes do, and sometimes do not, contain many sites of insertion for a given transposon.

Base Sequence

LINE-1 insertion intermediates recombine with one another or with DNA breaks to form genome rearrangements.

LINE-1 (L1) retrotransposition is common in human cancers and rearrangements at insertion sites can contribute to cancer-driving oncogene amplifications and promote genome instability. However, the mechanisms underlying rearrangements of L1 retrotransposition intermediates are poorly understood. To address this gap, we developed GFP-based recombination reporter assays to study the formation of L1 retrotransposition-mediated rearrangements. Using these reporters combined with long-read sequencing, we find that L1 retrotransposition cDNA intermediates can recombine with distal DNA breaks to generate chromosomal rearrangements. We also find that two independent L1 insertion cDNA intermediates on distinct genomic loci can recombine with each other to generate chromosomal rearrangements. Both types of rearrangements depend on L1-encoded ORF2p endonuclease and reverse transcriptase activities. Using these reporters, we discover that L1 retrotransposition-mediated rearrangements are robustly induced when the recombining sequences share extensive homology and that their formation requires the homologous recombination factor BRCA1. In contrast, we find L1 retrotransposition-mediated rearrangements are suppressed by the mismatch repair factor MSH2 when the recombining sequences contain mismatches. Given the repetitive nature of our genome, these findings highlight the risk of L1 insertion intermediates becoming substrates for aberrant recombination and promoting genome instability.

Long Interspersed Nucleotide Elements

Identifying transgene insertions in Caenorhabditis elegans genomes with Oxford Nanopore sequencing.

Genetically modified organisms are commonly used in disease research and agriculture but the precise genomic alterations underlying transgenic mutations are often unknown. The position and characteristics of transgenes, including the number of independent insertions, influences the expression of both transgenic and wild-type sequences. We used long-read, Oxford Nanopore Technologies (ONT) to sequence and assemble two transgenic strains of Caenorhabditis elegans commonly used in the research of neurodegenerative diseases: BY250 (pPdat-1::GFP) and UA44 (GFP and human α-synuclein), a model for Parkinson's research. After scaffolding to the reference, the final assembled sequences were ∼102 Mb with N50s of 17.9 Mb and 18.0 Mb, respectively, and L90s of six contiguous sequences, representing chromosome-level assemblies. Each of the assembled sequences contained more than 99.2% of the Nematoda BUSCO genes found in the C. elegans reference and 99.5% of the annotated C. elegans reference protein-coding genes. We identified the locations of the transgene insertions and confirmed that all transgene sequences were inserted in intergenic regions, leaving the organismal gene content intact. The transgenic C. elegans genomes presented here will be a valuable resource for Parkinson's research as well as other neurodegenerative diseases. Our work demonstrates that long-read sequencing is a fast, cost-effective way to assemble genome sequences and characterize mutant lines and strains.

Caenorhabditis elegans

Long-term intravenous therapy with peripherally inserted silicone elastomer central venous catheters in patients with malignant diseases.

Peripherally inserted central venous silicone elastomer catheters were studied in 81 patients who had malignancy requiring prolonged intravenous therapy. The catheters remained in place from 5 to 171 days, with a median of 30 days. Ninety-one percent of the catheters were unassociated with clinical complications. Six percent of 87 inserted catheters were removed due to peripheral thrombophlebitis. Two patients developed subclavian thrombosis, requiring catheter removal. One patient had catheter-related sepsis with Staphylococcus aureus. Bacteria grew from eleven percent of the cultured catheter tips. Indwelling catheters presence did not appear to influence response to antibiotic therapy. We conclude from this pilot study that long-term central venous access with peripherally inserted silicone elastomer catheters has an acceptably low complication rate in a high-risk patient population.

Adolescent

Insertion of CG repeats and 3' terminus overhangs drive B-to-Z transition: A case study with NF-κB bearing DNA nanostructures.

Z-DNA, a non-canonical helical structure of DNA plays a vital role in various biological processes, including transcription and genomic stability. Though low concentration of trivalent cations is known to induce B-Z transition, the effect of short CG repeats, overhangs sequences, loop length and order of nucleotides on Z-DNA formation in larger DNA is utterly unknown. Earlier, a series of self-assembled branched DNA (bDNA) nanostructures having 5T in the loop are reported to be resistant to B-to-Z DNA transition irrespective of the overhang sequences. Since the presence of alternative purine/pyrimidine sequences and direction of oligonucleotides play a vital role during replication and transcription, we hypothesize that the insertion of a small number of CG repeats, or a change in direction of overhang sequences may influence the B-to-Z DNA transition. Here, we show that Z-DNA formation was induced by inserting CG repeats into bDNA structures that were previously resistant to B-Z transition. Moreover, B-Z transition was also observed when overhangs were introduced at the 3' terminus. The generality of the approach of B-Z transition was demonstrated in a series of bDNA structures including the bDNA having NF-kβ sequences. Different dye binding experiments suggest the formation of Z-DNA in bDNA having overhangs at the 3' terminus against the control of bDNA with 5' overhangs. Interestingly, the melting temperature (Tm) was substantially reduced to 55 °C in the Z-DNA as compared to the LaCl3-induced condensed DNA having Tm of 77 °C. Fluorescence study also supports the presence of minor groove in Z-DNA which binds Hoechst. ITC indicates an entropy- and enthalpy-driven favorable binding between lanthanide cations and bDNA. Thus, the present study establishes a synthetic bDNA nanotechnology platform for systematically investigating how local sequence architecture, including the insertion of CG repeats, loop length, and overhang orientation influences B-to-Z conformational switching under controlled experimental conditions.

B-Z transition

Experimental and clinical data on the insertion of the levator palpebrae superioris muscle.

Radiographic and electron microscopic evidence showed that the upper eyelid skin crease is formed by the insertion of the levator palpebrae superioris muscle into the septa between the orbicularis muscle into the septa between the orbicularis muscle bundles and not into the skin itself. Experiments on monkeys showed that the insertions of the aponeurosis and of Müller's muscle both contribute to normal eyelid elevation. No histologic evidence was found for a disinsertion of Müller's muscle in 20 cases of blepharoptosis. This, with other evidence discussed, supports the functional importance of the human aponeurotic insertions in eyelid elevation.

Adolescent

Immediate post-placental insertion of intrauterine contraceptive devices.

Insertion of one of three types of intrauterine contraceptive device--the Lem, copper 7, and 'Progestasert' system--was carried out in 274 obstetric patients. These devices were all inserted within 20 min of delivery of the placenta and membranes, with a special 25 cm inserter. The expulsion-rate was low (less than 7%), and there were no uterine perforations. There was no difference in puerperal morbidity between these patients and a matched control group, and no cases of pelvic sepsis developed.

Contraception

L1 insertion intermediates recombine with one another or with DNA breaks to form genome rearrangements.

LINE-1 retrotransposition is common in human cancers and rearrangements at insertion sites can contribute to cancer-driving oncogene amplifications and promote genome instability. However, the mechanisms underlying rearrangements of L1 retrotransposition intermediates are poorly understood. To address this gap, we developed GFP-based recombination reporter assays to study the formation of L1 retrotransposition-mediated rearrangements. Using these reporters combined with long-read sequencing approaches, we find that L1 retrotransposition intermediates can recombine with distal DNA breaks to generate chromosomal rearrangements. We also find that two distinct L1 insertion intermediates can recombine with each other to generate chromosomal rearrangements. Both types of rearrangements depend on L1-encoded ORF2p endonuclease and reverse transcriptase activities. Using these reporters, we discover that L1 retrotransposition-mediated rearrangements are robustly induced when the recombining sequences share homology and that their formation requires the homologous recombination factor BRCA1. Given the repetitive nature of our genome, these findings highlight the risk of L1 insertion intermediates becoming substrates for aberrant recombination and promoting genome instability.

L1 retrotransposons

Clinical Trial: Effectiveness and Safety of a Novel Anal Insert Device for Treatment of Faecal Incontinence.

BACKGROUND: Treatment options for medically-refractory faecal incontinence (FI)-including anorectal biofeedback, dextranomer injection, and sacral nerve stimulation-are limited and outcomes are often suboptimal. Anal or vaginal insert devices are infrequently used. AIMS: We evaluated the safety and effectiveness of a new anal insert device (StaySure) in patients with FI. METHODS: Patients with FI for&#x2009;&#x2265;&#x2009;6&#x2009;months and&#x2009;&#x2265;&#x2009;4 moderate or large FI episodes during a 4-week baseline entered a 2-4&#x2009;week fitting/run-in period to individualise device size (10 or 13&#x2009;mm) followed by a 4-week treatment period. Outcomes included effectiveness, safety, and quality of life (QoL). The primary outcome was the proportion achieving a&#x2009;&#x2265;&#x2009;50% reduction in FI frequency. RESULTS: Of 124 enrolled patients, 98, 71, and 61 progressed through the baseline, fitting/run-in, and treatment phases respectively, with few exclusions due to device intolerance. In the intent-to-treat cohort of 59 participants (93% women), mean (SD) number of days with FI declined from 13.2 (7.0) to 6.3 (6.9), and FI weekly episodes declined from 5.4 (6.9) to 2.1 (5.1) (69% reduction; p&#x2009;<&#x2009;0.001) with similar results for both device sizes. The primary endpoint was achieved in 76.3% of participants; 54.2% achieved&#x2009;&#x2265;&#x2009;75% reduction. The FIQoL overall score increased from a mean (SD) of 1.9 (0.6) to 2.3 (0.6) (p&#x2009;<&#x2009;0.001), indicating improved QoL. Improvements in FI frequency, FIQoL exceeded minimal clinically important difference thresholds, confirming clear clinical benefit. No treatment-related serious adverse events were reported. CONCLUSIONS: The StaySure anal insert device is safe, well tolerated, and effective in reducing FI in patients with moderate to severe symptoms refractory to conservative therapies. TRIAL REGISTRATION: ClinicalTrials.gov identifier: NCT03898778.

Adult

Applications of transposon-insertion sequencing for understanding bacterial physiology.

Transposon-insertion sequencing (Tn-seq) couples transposon mutagenesis with next-generation sequencing to identify the transposon insertion site for thousands of mutants in parallel. It is a powerful technology with a myriad of uses beyond the identification of essential genes required for a cell to grow and divide. Tn-seq is particularly useful as a high-throughput method to assign function to function-unknown genes, which have increased steadily with the abundance of newly sequenced bacterial genomes. Tn-seq has now been adapted for use in over 100 bacterial species. Here, we summarize the applications of Tn-seq for querying bacterial physiology and discuss some of the possible applications for the future.

DNA Transposable Elements